2 * Selector manipulation functions
4 * Copyright 1995 Alexandre Julliard
11 #include "selectors.h"
12 #include "stackframe.h"
16 /***********************************************************************
17 * AllocSelectorArray (KERNEL.206)
19 WORD WINAPI
AllocSelectorArray( WORD count
)
21 WORD i
, sel
, size
= 0;
25 for (i
= FIRST_LDT_ENTRY_TO_ALLOC
; i
< LDT_SIZE
; i
++)
27 if (!IS_LDT_ENTRY_FREE(i
)) size
= 0;
28 else if (++size
>= count
) break;
30 if (i
== LDT_SIZE
) return 0;
34 entry
.type
= SEGMENT_DATA
;
35 entry
.seg_32bit
= FALSE
;
36 entry
.read_only
= FALSE
;
37 entry
.limit_in_pages
= FALSE
;
38 entry
.limit
= 1; /* avoid 0 base and limit */
40 for (i
= 0; i
< count
; i
++)
42 /* Mark selector as allocated */
43 ldt_flags_copy
[sel
+ i
] |= LDT_FLAGS_ALLOCATED
;
44 LDT_SetEntry( sel
+ i
, &entry
);
46 return ENTRY_TO_SELECTOR( sel
);
50 /***********************************************************************
51 * AllocSelector (KERNEL.175)
53 WORD WINAPI
AllocSelector( WORD sel
)
55 WORD newsel
, count
, i
;
57 count
= sel
? ((GET_SEL_LIMIT(sel
) >> 16) + 1) : 1;
58 newsel
= AllocSelectorArray( count
);
59 TRACE(selector
, "(%04x): returning %04x\n",
61 if (!newsel
) return 0;
62 if (!sel
) return newsel
; /* nothing to copy */
63 for (i
= 0; i
< count
; i
++)
66 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
) + i
, &entry
);
67 LDT_SetEntry( SELECTOR_TO_ENTRY(newsel
) + i
, &entry
);
73 /***********************************************************************
74 * FreeSelector (KERNEL.176)
76 WORD WINAPI
FreeSelector( WORD sel
)
78 if (IS_SELECTOR_FREE(sel
)) return sel
; /* error */
79 SELECTOR_FreeBlock( sel
, 1 );
84 /***********************************************************************
87 * Set the LDT entries for an array of selectors.
89 static void SELECTOR_SetEntries( WORD sel
, const void *base
, DWORD size
,
90 enum seg_type type
, BOOL32 is32bit
,
96 /* The limit for the first selector is the whole */
97 /* block. The next selectors get a 64k limit. */
98 entry
.base
= (unsigned long)base
;
100 entry
.seg_32bit
= is32bit
;
101 entry
.read_only
= readonly
;
102 entry
.limit_in_pages
= (size
> 0x100000);
103 if (entry
.limit_in_pages
) entry
.limit
= ((size
+ 0xfff) >> 12) - 1;
104 else entry
.limit
= size
- 1;
105 /* Make sure base and limit are not 0 together if the size is not 0 */
106 if (!base
&& !entry
.limit
&& size
) entry
.limit
= 1;
107 count
= (size
+ 0xffff) / 0x10000;
108 for (i
= 0; i
< count
; i
++)
110 LDT_SetEntry( SELECTOR_TO_ENTRY(sel
) + i
, &entry
);
111 entry
.base
+= 0x10000;
112 /* Apparently the next selectors should *not* get a 64k limit. */
113 /* Can't remember where I read they should... --AJ */
114 entry
.limit
-= entry
.limit_in_pages
? 0x10 : 0x10000;
119 /***********************************************************************
120 * SELECTOR_AllocBlock
122 * Allocate selectors for a block of linear memory.
124 WORD
SELECTOR_AllocBlock( const void *base
, DWORD size
, enum seg_type type
,
125 BOOL32 is32bit
, BOOL32 readonly
)
130 count
= (size
+ 0xffff) / 0x10000;
131 sel
= AllocSelectorArray( count
);
132 if (sel
) SELECTOR_SetEntries( sel
, base
, size
, type
, is32bit
, readonly
);
137 /***********************************************************************
140 * Move a block of selectors in linear memory.
142 void SELECTOR_MoveBlock( WORD sel
, const void *new_base
)
144 WORD i
, count
= (GET_SEL_LIMIT(sel
) >> 16) + 1;
146 for (i
= 0; i
< count
; i
++)
149 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
) + i
, &entry
);
150 entry
.base
= (unsigned long)new_base
;
151 LDT_SetEntry( SELECTOR_TO_ENTRY(sel
) + i
, &entry
);
156 /***********************************************************************
159 * Free a block of selectors.
161 void SELECTOR_FreeBlock( WORD sel
, WORD count
)
166 TRACE(selector
, "(%04x,%d)\n", sel
, count
);
167 sel
&= ~(__AHINCR
- 1); /* clear bottom bits of selector */
168 nextsel
= sel
+ (count
<< __AHSHIFT
);
172 /* Check if we are freeing current %fs or %gs selector */
176 if ((fs
>= sel
) && (fs
< nextsel
))
178 WARN(selector
, "Freeing %%fs selector (%04x), not good.\n", fs
);
182 if ((gs
>= sel
) && (gs
< nextsel
)) SET_GS( 0 );
184 #endif /* __i386__ */
186 memset( &entry
, 0, sizeof(entry
) ); /* clear the LDT entries */
187 for (i
= SELECTOR_TO_ENTRY(sel
); count
; i
++, count
--)
189 LDT_SetEntry( i
, &entry
);
190 ldt_flags_copy
[i
] &= ~LDT_FLAGS_ALLOCATED
;
195 /***********************************************************************
196 * SELECTOR_ReallocBlock
198 * Change the size of a block of selectors.
200 WORD
SELECTOR_ReallocBlock( WORD sel
, const void *base
, DWORD size
,
201 enum seg_type type
, BOOL32 is32bit
, BOOL32 readonly
)
203 WORD i
, oldcount
, newcount
;
206 oldcount
= (GET_SEL_LIMIT(sel
) >> 16) + 1;
207 newcount
= (size
+ 0xffff) >> 16;
209 if (oldcount
< newcount
) /* We need to add selectors */
211 /* Check if the next selectors are free */
212 if (SELECTOR_TO_ENTRY(sel
) + newcount
> LDT_SIZE
) i
= oldcount
;
214 for (i
= oldcount
; i
< newcount
; i
++)
215 if (!IS_LDT_ENTRY_FREE(SELECTOR_TO_ENTRY(sel
)+i
)) break;
217 if (i
< newcount
) /* they are not free */
219 SELECTOR_FreeBlock( sel
, oldcount
);
220 sel
= AllocSelectorArray( newcount
);
222 else /* mark the selectors as allocated */
224 for (i
= oldcount
; i
< newcount
; i
++)
225 ldt_flags_copy
[SELECTOR_TO_ENTRY(sel
)+i
] |=LDT_FLAGS_ALLOCATED
;
228 else if (oldcount
> newcount
) /* We need to remove selectors */
230 SELECTOR_FreeBlock( ENTRY_TO_SELECTOR(SELECTOR_TO_ENTRY(sel
)+newcount
),
231 oldcount
- newcount
);
233 if (sel
) SELECTOR_SetEntries( sel
, base
, size
, type
, is32bit
, readonly
);
238 /***********************************************************************
239 * PrestoChangoSelector (KERNEL.177)
241 WORD WINAPI
PrestoChangoSelector( WORD selSrc
, WORD selDst
)
244 LDT_GetEntry( SELECTOR_TO_ENTRY( selSrc
), &entry
);
245 entry
.type
^= SEGMENT_CODE
; /* toggle the executable bit */
246 LDT_SetEntry( SELECTOR_TO_ENTRY( selDst
), &entry
);
251 /***********************************************************************
252 * AllocCStoDSAlias (KERNEL.170)
254 WORD WINAPI
AllocCStoDSAlias( WORD sel
)
259 newsel
= AllocSelectorArray( 1 );
260 TRACE(selector
, "(%04x): returning %04x\n",
262 if (!newsel
) return 0;
263 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
264 entry
.type
= SEGMENT_DATA
;
265 LDT_SetEntry( SELECTOR_TO_ENTRY(newsel
), &entry
);
270 /***********************************************************************
271 * AllocDStoCSAlias (KERNEL.171)
273 WORD WINAPI
AllocDStoCSAlias( WORD sel
)
278 newsel
= AllocSelectorArray( 1 );
279 TRACE(selector
, "(%04x): returning %04x\n",
281 if (!newsel
) return 0;
282 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
283 entry
.type
= SEGMENT_CODE
;
284 LDT_SetEntry( SELECTOR_TO_ENTRY(newsel
), &entry
);
289 /***********************************************************************
290 * LongPtrAdd (KERNEL.180)
292 void WINAPI
LongPtrAdd( DWORD ptr
, DWORD add
)
295 LDT_GetEntry( SELECTOR_TO_ENTRY(SELECTOROF(ptr
)), &entry
);
297 LDT_SetEntry( SELECTOR_TO_ENTRY(SELECTOROF(ptr
)), &entry
);
301 /***********************************************************************
302 * GetSelectorBase (KERNEL.186)
304 DWORD WINAPI
GetSelectorBase( WORD sel
)
306 DWORD base
= GET_SEL_BASE(sel
);
308 /* if base points into DOSMEM, assume we have to
309 * return pointer into physical lower 1MB */
311 return DOSMEM_MapLinearToDos( (LPVOID
)base
);
315 /***********************************************************************
316 * SetSelectorBase (KERNEL.187)
318 WORD WINAPI
SetSelectorBase( WORD sel
, DWORD base
)
322 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
324 entry
.base
= (DWORD
)DOSMEM_MapDosToLinear(base
);
326 LDT_SetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
331 /***********************************************************************
332 * GetSelectorLimit (KERNEL.188)
334 DWORD WINAPI
GetSelectorLimit( WORD sel
)
336 return GET_SEL_LIMIT(sel
);
340 /***********************************************************************
341 * SetSelectorLimit (KERNEL.189)
343 WORD WINAPI
SetSelectorLimit( WORD sel
, DWORD limit
)
346 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
347 entry
.limit_in_pages
= (limit
>= 0x100000);
348 if (entry
.limit_in_pages
) entry
.limit
= limit
>> 12;
349 else entry
.limit
= limit
;
350 LDT_SetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
355 /***********************************************************************
356 * SelectorAccessRights (KERNEL.196)
358 WORD WINAPI
SelectorAccessRights( WORD sel
, WORD op
, WORD val
)
361 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
362 if (op
== 0) /* get */
364 return 0x01 | /* accessed */
365 0x10 | /* not system */
368 ((entry
.read_only
== 0) << 1) |
370 (entry
.seg_32bit
<< 14) |
371 (entry
.limit_in_pages
<< 15);
375 entry
.read_only
= ((val
& 2) == 0);
376 entry
.type
= (val
>> 2) & 3;
377 entry
.seg_32bit
= val
& 0x4000;
378 entry
.limit_in_pages
= val
& 0x8000;
379 LDT_SetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
385 /***********************************************************************
386 * IsBadCodePtr16 (KERNEL.336)
388 BOOL16 WINAPI
IsBadCodePtr16( SEGPTR lpfn
)
393 sel
= SELECTOROF(lpfn
);
394 if (!sel
) return TRUE
;
395 if (IS_SELECTOR_FREE(sel
)) return TRUE
;
396 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
397 if (entry
.type
!= SEGMENT_CODE
) return TRUE
;
398 if (OFFSETOF(lpfn
) > GET_SEL_LIMIT(sel
)) return TRUE
;
403 /***********************************************************************
404 * IsBadStringPtr16 (KERNEL.337)
406 BOOL16 WINAPI
IsBadStringPtr16( SEGPTR ptr
, UINT16 size
)
411 sel
= SELECTOROF(ptr
);
412 if (!sel
) return TRUE
;
413 if (IS_SELECTOR_FREE(sel
)) return TRUE
;
414 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
415 if ((entry
.type
== SEGMENT_CODE
) && entry
.read_only
) return TRUE
;
416 if (strlen(PTR_SEG_TO_LIN(ptr
)) < size
) size
= strlen(PTR_SEG_TO_LIN(ptr
));
417 if (OFFSETOF(ptr
) + size
- 1 > GET_SEL_LIMIT(sel
)) return TRUE
;
422 /***********************************************************************
423 * IsBadHugeReadPtr16 (KERNEL.346)
425 BOOL16 WINAPI
IsBadHugeReadPtr16( SEGPTR ptr
, DWORD size
)
430 sel
= SELECTOROF(ptr
);
431 if (!sel
) return TRUE
;
432 if (IS_SELECTOR_FREE(sel
)) return TRUE
;
433 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
434 if ((entry
.type
== SEGMENT_CODE
) && entry
.read_only
) return TRUE
;
435 if (OFFSETOF(ptr
) + size
- 1 > GET_SEL_LIMIT(sel
)) return TRUE
;
440 /***********************************************************************
441 * IsBadHugeWritePtr16 (KERNEL.347)
443 BOOL16 WINAPI
IsBadHugeWritePtr16( SEGPTR ptr
, DWORD size
)
448 sel
= SELECTOROF(ptr
);
449 if (!sel
) return TRUE
;
450 if (IS_SELECTOR_FREE(sel
)) return TRUE
;
451 LDT_GetEntry( SELECTOR_TO_ENTRY(sel
), &entry
);
452 if ((entry
.type
== SEGMENT_CODE
) || entry
.read_only
) return TRUE
;
453 if (OFFSETOF(ptr
) + size
- 1 > GET_SEL_LIMIT(sel
)) return TRUE
;
457 /***********************************************************************
458 * IsBadReadPtr16 (KERNEL.334)
460 BOOL16 WINAPI
IsBadReadPtr16( SEGPTR ptr
, UINT16 size
)
462 return IsBadHugeReadPtr16( ptr
, size
);
466 /***********************************************************************
467 * IsBadWritePtr16 (KERNEL.335)
469 BOOL16 WINAPI
IsBadWritePtr16( SEGPTR ptr
, UINT16 size
)
471 return IsBadHugeWritePtr16( ptr
, size
);
475 /***********************************************************************
476 * MemoryRead (TOOLHELP.78)
478 DWORD WINAPI
MemoryRead( WORD sel
, DWORD offset
, void *buffer
, DWORD count
)
480 if (IS_SELECTOR_FREE(sel
)) return 0;
481 if (offset
> GET_SEL_LIMIT(sel
)) return 0;
482 if (offset
+ count
> GET_SEL_LIMIT(sel
) + 1)
483 count
= GET_SEL_LIMIT(sel
) + 1 - offset
;
484 memcpy( buffer
, ((char *)GET_SEL_BASE(sel
)) + offset
, count
);
489 /***********************************************************************
490 * MemoryWrite (TOOLHELP.79)
492 DWORD WINAPI
MemoryWrite( WORD sel
, DWORD offset
, void *buffer
, DWORD count
)
494 if (IS_SELECTOR_FREE(sel
)) return 0;
495 if (offset
> GET_SEL_LIMIT(sel
)) return 0;
496 if (offset
+ count
> GET_SEL_LIMIT(sel
) + 1)
497 count
= GET_SEL_LIMIT(sel
) + 1 - offset
;
498 memcpy( ((char *)GET_SEL_BASE(sel
)) + offset
, buffer
, count
);
502 /************************************* Win95 pointer mapping functions *
506 /***********************************************************************
507 * MapSL (KERNEL32.523)
509 * Maps fixed segmented pointer to linear.
511 LPVOID WINAPI
MapSL( SEGPTR sptr
)
513 return (LPVOID
)PTR_SEG_TO_LIN(sptr
);
516 /***********************************************************************
517 * MapSLFix (KERNEL32.524)
519 * FIXME: MapSLFix and UnMapSLFixArray should probably prevent
520 * unexpected linear address change when GlobalCompact() shuffles
524 LPVOID WINAPI
MapSLFix( SEGPTR sptr
)
526 return (LPVOID
)PTR_SEG_TO_LIN(sptr
);
529 /***********************************************************************
530 * UnMapSLFixArray (KERNEL32.701)
533 void WINAPI
UnMapSLFixArray( SEGPTR sptr
[], INT32 length
)
537 /***********************************************************************
538 * MapLS (KERNEL32.522)
540 * Maps linear pointer to segmented.
542 SEGPTR WINAPI
MapLS( LPVOID ptr
)
548 WORD sel
= SELECTOR_AllocBlock( ptr
, 0x10000, SEGMENT_DATA
, FALSE
, FALSE
);
549 return PTR_SEG_OFF_TO_SEGPTR( sel
, 0 );
554 /***********************************************************************
555 * UnMapLS (KERNEL32.700)
557 * Free mapped selector.
559 void WINAPI
UnMapLS( SEGPTR sptr
)
561 if (SELECTOROF(sptr
))
562 SELECTOR_FreeBlock( SELECTOROF(sptr
), 1 );
565 /***********************************************************************
566 * GetThreadSelectorEntry (KERNEL32)
567 * FIXME: add #ifdef i386 for non x86
569 BOOL32 WINAPI
GetThreadSelectorEntry( HANDLE32 hthread
, DWORD sel
,
574 LDT_GetEntry(SELECTOR_TO_ENTRY(sel
),&ldtentry
);
575 ldtent
->BaseLow
= ldtentry
.base
& 0x0000ffff;
576 ldtent
->HighWord
.Bits
.BaseMid
= (ldtentry
.base
& 0x00ff0000) >> 16;
577 ldtent
->HighWord
.Bits
.BaseHi
= (ldtentry
.base
& 0xff000000) >> 24;
578 ldtent
->LimitLow
= ldtentry
.limit
& 0x0000ffff;
579 ldtent
->HighWord
.Bits
.LimitHi
= (ldtentry
.limit
& 0x00ff0000) >> 16;
580 ldtent
->HighWord
.Bits
.Dpl
= 3;
581 ldtent
->HighWord
.Bits
.Sys
= 0;
582 ldtent
->HighWord
.Bits
.Pres
= 1;
583 ldtent
->HighWord
.Bits
.Type
= 0x10|(ldtentry
.type
<< 2);
584 if (ldtentry
.read_only
)
585 ldtent
->HighWord
.Bits
.Type
|=0x2;
586 ldtent
->HighWord
.Bits
.Granularity
= ldtentry
.limit_in_pages
;
587 ldtent
->HighWord
.Bits
.Default_Big
= ldtentry
.seg_32bit
;
592 /**********************************************************************
594 * These functions map linear pointers at [EBP+xxx] to segmented pointers
596 * Win95 uses some kind of alias structs, which it stores in [EBP+x] to
597 * unravel them at SUnMapLS. We just store the segmented pointer there.
600 x_SMapLS_IP_EBP_x(CONTEXT
*context
,int argoff
) {
603 val
=*(DWORD
*)(EBP_reg(context
)+argoff
);
606 *(DWORD
*)(EBP_reg(context
)+argoff
) = 0;
608 ptr
= MapLS((LPVOID
)val
);
609 *(DWORD
*)(EBP_reg(context
)+argoff
) = ptr
;
611 EAX_reg(context
) = ptr
;
614 REGS_ENTRYPOINT(SMapLS_IP_EBP_8
) {x_SMapLS_IP_EBP_x(context
,8);}
615 REGS_ENTRYPOINT(SMapLS_IP_EBP_12
) {x_SMapLS_IP_EBP_x(context
,12);}
616 REGS_ENTRYPOINT(SMapLS_IP_EBP_16
) {x_SMapLS_IP_EBP_x(context
,16);}
617 REGS_ENTRYPOINT(SMapLS_IP_EBP_20
) {x_SMapLS_IP_EBP_x(context
,20);}
618 REGS_ENTRYPOINT(SMapLS_IP_EBP_24
) {x_SMapLS_IP_EBP_x(context
,24);}
619 REGS_ENTRYPOINT(SMapLS_IP_EBP_28
) {x_SMapLS_IP_EBP_x(context
,28);}
620 REGS_ENTRYPOINT(SMapLS_IP_EBP_32
) {x_SMapLS_IP_EBP_x(context
,32);}
621 REGS_ENTRYPOINT(SMapLS_IP_EBP_36
) {x_SMapLS_IP_EBP_x(context
,36);}
622 REGS_ENTRYPOINT(SMapLS_IP_EBP_40
) {x_SMapLS_IP_EBP_x(context
,40);}
624 REGS_ENTRYPOINT(SMapLS
)
626 if (EAX_reg(context
)>=0x10000) {
627 EAX_reg(context
) = MapLS((LPVOID
)EAX_reg(context
));
628 EDX_reg(context
) = EAX_reg(context
);
630 EDX_reg(context
) = 0;
634 REGS_ENTRYPOINT(SUnMapLS
)
636 if (EAX_reg(context
)>=0x10000)
637 UnMapLS((SEGPTR
)EAX_reg(context
));
641 x_SUnMapLS_IP_EBP_x(CONTEXT
*context
,int argoff
) {
642 if (*(DWORD
*)(EBP_reg(context
)+argoff
))
643 UnMapLS(*(DWORD
*)(EBP_reg(context
)+argoff
));
644 *(DWORD
*)(EBP_reg(context
)+argoff
)=0;
646 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_8
) { x_SUnMapLS_IP_EBP_x(context
,8); }
647 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_12
) { x_SUnMapLS_IP_EBP_x(context
,12); }
648 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_16
) { x_SUnMapLS_IP_EBP_x(context
,16); }
649 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_20
) { x_SUnMapLS_IP_EBP_x(context
,20); }
650 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_24
) { x_SUnMapLS_IP_EBP_x(context
,24); }
651 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_28
) { x_SUnMapLS_IP_EBP_x(context
,28); }
652 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_32
) { x_SUnMapLS_IP_EBP_x(context
,32); }
653 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_36
) { x_SUnMapLS_IP_EBP_x(context
,36); }
654 REGS_ENTRYPOINT(SUnMapLS_IP_EBP_40
) { x_SUnMapLS_IP_EBP_x(context
,40); }
656 /**********************************************************************
657 * AllocMappedBuffer (KERNEL32.38)
659 * This is a undocumented KERNEL32 function that
660 * SMapLS's a GlobalAlloc'ed buffer.
662 * Input: EDI register: size of buffer to allocate
663 * Output: EDI register: pointer to buffer
665 * Note: The buffer is preceeded by 8 bytes:
668 * edi-4 SEGPTR to buffer
669 * edi-8 some magic Win95 needs for SUnMapLS
670 * (we use it for the memory handle)
672 * The SEGPTR is used by the caller!
675 REGS_ENTRYPOINT(AllocMappedBuffer
)
677 HGLOBAL32 handle
= GlobalAlloc32(0, EDI_reg(context
) + 8);
678 DWORD
*buffer
= (DWORD
*)GlobalLock32(handle
);
682 if (!(ptr
= MapLS(buffer
+ 2)))
684 GlobalUnlock32(handle
);
685 GlobalFree32(handle
);
689 EAX_reg(context
) = EDI_reg(context
) = 0;
695 EAX_reg(context
) = (DWORD
) ptr
;
696 EDI_reg(context
) = (DWORD
)(buffer
+ 2);
700 /**********************************************************************
701 * FreeMappedBuffer (KERNEL32.39)
703 * Free a buffer allocated by AllocMappedBuffer
705 * Input: EDI register: pointer to buffer
708 REGS_ENTRYPOINT(FreeMappedBuffer
)
710 if (EDI_reg(context
))
712 DWORD
*buffer
= (DWORD
*)EDI_reg(context
) - 2;
716 GlobalUnlock32(buffer
[0]);
717 GlobalFree32(buffer
[0]);
721 /**********************************************************************
722 * WOWGetVDMPointer (KERNEL32.55)
723 * Get linear from segmented pointer. (MSDN lib)
725 LPVOID WINAPI
WOWGetVDMPointer(DWORD vp
,DWORD nrofbytes
,BOOL32
protected)
727 /* FIXME: add size check too */
729 return PTR_SEG_TO_LIN(vp
);
731 return DOSMEM_MapRealToLinear(vp
);
734 /**********************************************************************
735 * GetVDMPointer32W (KERNEL.516)
737 LPVOID WINAPI
GetVDMPointer32W(DWORD vp
,DWORD mode
)
739 return WOWGetVDMPointer(vp
,0,mode
);
742 /**********************************************************************
743 * WOWGetVDMPointerFix (KERNEL32.55)
744 * Dito, but fix heapsegment (MSDN lib)
746 LPVOID WINAPI
WOWGetVDMPointerFix(DWORD vp
,DWORD nrofbytes
,BOOL32
protected)
748 /* FIXME: fix heapsegment */
749 return WOWGetVDMPointer(vp
,nrofbytes
,protected);
752 /**********************************************************************
753 * WOWGetVDMPointerUnFix (KERNEL32.56)
755 void WINAPI
WOWGetVDMPointerUnfix(DWORD vp
)
757 /* FIXME: unfix heapsegment */
760 /***********************************************************************
761 * UTSelectorOffsetToLinear (WIN32S16.48)
763 * rough guesswork, but seems to work (I had no "reasonable" docu)
765 LPVOID WINAPI
UTSelectorOffsetToLinear(SEGPTR sptr
)
767 return PTR_SEG_TO_LIN(sptr
);
770 /***********************************************************************
771 * UTLinearToSelectorOffset (WIN32S16.49)
773 * FIXME: I don't know if that's the right way to do linear -> segmented
775 SEGPTR WINAPI
UTLinearToSelectorOffset(LPVOID lptr
)